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Phase stabilities and decomposition mechanism in the Zr-Si-N system studied by combined ab initio DFT and thermodynamic calculation

机译:结合从头DFT和热力学计算研究了Zr-Si-N体系的相稳定性和分解机理

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摘要

The total energy, lattice constant, bulk modulus and its first derivative of stable binary face-centered cubic (fcc)-ZrN, hexagonal close-packed (hcp)(?)-Si_3N_4, and unstable hcp-Zr_3N_4 and fcc-SiN, as well as the total energy and lattice constant of the ternary fcc(NaCl)- and hcp(P)-Zr_(1-x)Si_xN_y solid solution phases were calculated by ab initio density functional theory (DFT) at 0 K. A combination of ab initio DFT and thermodynamic calculations was then used to study the phase stabilities and possible mechanisms of the decomposition of the Zr_(1-x)Si_xN_y, solid solution at elevated temperatures accounting for the mixing entropy and for the temperature dependence of the interaction parameter that describes the mixing enthalpy. It is shown that the exponential dependence of the interaction parameter on temperature yields more reliable results than the conventionally used linear one. The fcc- to hep-phase transition points obtained by the exponential dependence in the range of x = 0.10-0.15, are in a better agreement with the experimental results than the results obtained from linear dependence. We have also calculated the temperature-composition diagrams and found that spinodal phase segregation mechanism may be possible only for a relatively high Si content, whereas for the low Si content, where a hardness enhancement has been reported, the most probable mechanism of the phase segregation is nucleation and growth.
机译:稳定二元面心立方(fcc)-ZrN、六方紧堆积(hcp)(?)的总能量、晶格常数、体积模量及其一阶导数采用从头密度泛函理论(DFT)在0 K下计算了-Si_3N_4和不稳定的hcp-Zr_3N_4和fcc-SiN,以及三元fcc(NaCl)-和hcp(P)-Zr_(1-x)Si_xN_y固固溶液相的总能量和晶格常数。然后,结合从头开始DFT和热力学计算,研究了Zr_(1-x)Si_xN_y固体溶液在高温下分解的相稳定性和可能的机制,其中考虑了混合熵和描述混合焓的相互作用参数的温度依赖性。结果表明,相互作用参数对温度的指数依赖性比传统使用的线性参数产生更可靠的结果。在x = 0.10-0.15范围内,指数依赖性得到的fcc-到hep相变点比线性依赖性得到的结果与实验结果的吻合性更好。我们还计算了温度-组成图,发现棘状相偏析机制可能只在相对较高的Si含量下才有可能,而对于低Si含量,已经报道了硬度增强,最可能的相偏析机制是成核和生长。

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